共查询到10条相似文献,搜索用时 31 毫秒
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We perform a comprehensive experimental study on holographic and thermal-fixing characteristics of Zn:Fe:LiNbO3 The measured hologram decay time constants, respectively caused by optical readout and under dark condition, with thermal fixing are 15 times and 75 times longer than that obtained without thermal fixing. This suggests that Zn:Fe:LiNbO3 crystals are suitable for thermal fixing. Multiplexed recordings of 300 holograms using different thermal fixing schemes verify that a proper multiplexing scheme such as track-division thermal-fixing scheme for disc-type holographic storage can effectively compensate for the negative effect of zinc-doping on the dynamic range, thus the storage density is enhanced. 相似文献
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The phenomena of acoustic emission in LiNbO3:Fe:Ce crystals have been observed in the process of light-induced quasi-breakdown. It is found that the ultra-high frequency acoustic signal introduced into the crystal is modulated by the low frequency acoustic waves. Its frequency increases with the increase of the intensity of incident light and its jump period of breakdown is the same as that of the photovoltaic current Ic, the change of light-induced refractive index △n and the diffracted light intensity L. This phenomenon has been analysed in this paper, which is caused by the inverse piezoelectric strain effect of the jump of space charge field during the quasi-breakdown. 相似文献
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We detect the photo-induced carriers in near-stoichiometric iron doped LiNbO3 crystal by the holographic technique. The results show that the dominant carriers are electrons in the sample with Li/Nb ratio of 0.9988. By analysis of the OH^- absorption spectra of the crystal, we contribute the electron domination in near-stoichiometric Fe-doped LiNbO3 crystal to the existence of NbLi which provides the anti-site defect to Fe^2+. 相似文献
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Forward degenerate four-wave mixing (DFWM) processes are investigated with a femtosecond pulsed laser in lithium niobate crystal doubly-doped with magnesium and iron (LiNbO3:Fe, Mg). The pulse energy dependence reveals a pure third-order nonlinear response, and the third-order nonlinear susceptibility x^(3) in the material is evaluated to be 4.96 × 10^-13 esu. The time-resolved DFWM process shows a response time of x^(3) shorter than 100fs, which is due to the nonresonant electronic nonlinearities. Our results indicate that LiNbO3 crystals have potentials for ultrafast real-time optical processing systems, which require a large and fast x^(3) optical nonlinearity. 相似文献
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在Fe∶LiNbO3中掺进MgO和Fe2 O3以提拉技术生长Mg∶Fe∶LiNbO3晶体 对晶体进行极化和还原处理 测试晶体的吸收光谱 ,Mg∶Fe∶LiNbO3晶体吸收边相对Fe∶LiNbO3晶体发生紫移 测试晶体的红外光谱 ,Mg∶(5mol % )Fe∶LiNbO3晶体OH 吸收峰由Fe∶LiNbO3晶体的 3482cm- 1移到35 34cm- 1 采用锂空位模型阐述Mg∶Fe∶LiNbO3晶体 ,吸收边和OH- 吸收峰移动的机理 测试晶体的抗光致散射能力 Mg∶(5mol% )Fe∶LiNbO3晶体抗光致散射能力比Fe∶LiNbO3晶体提高一个数量级以上 测试晶体的衍射效率和响应时间 Mg∶Fe∶LiNbO3晶体响应速度比Fe∶LiNbO3晶体提高四倍 相似文献
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以提拉法生长Zn(1mol% )∶Fe∶LiNbO3,Zn(4mol % )∶Fe∶LiNbO3,Zn(7mol% )∶Fe∶LiNbO3晶体 Zn∶Fe∶LiNbO3晶体随着Zn2 + 浓度的增加 ,抗光致散射能力增加 ,Zn(7mol% )∶Fe∶LiNbO3晶体抗光致散射能力比Fe∶LiNbO3晶体提高两个数量级以上 测试了Zn∶Fe∶LiNbO3晶体衍射效率、响应时间 以Zn(7mol % )∶Fe∶LiNbO3晶体作为存储元件 ,Zn(4mol% )∶Fe∶LiNbO3晶体作为位相共轭镜 ,进行全息关联存储试验 试验结果显示出成像质量好、图像清晰完整、噪音小等优点 研究了Zn∶Fe∶LiNbO3晶体全息存储性能增强的机理 Zn(4mol% )∶Fe∶LiNbO3晶体具有全息存储性能最佳的综合指标 相似文献
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在确定Cu在LiNbO3晶体中对应于365nm和633nm的激发系数、复合系数、光伏系数的基础上,采用龙格-库塔(Runge-Kutta)数值方法理论研究了双掺杂(Fe,Cu):LiNbO3晶体的深浅能级的掺杂组分比、氧化-还原状态对双色全息存储的记录灵敏度和动态范围的影响,并探讨了同时取得尽可能大的灵敏度和动态范围的晶体条件。结果表明,为了同时得到较大的记录灵敏度和动态范围,在实际应用中选用浅能级掺杂浓度为5.0×10^25m^-3,深能级掺杂浓度为3×10^24~3×10^25m^-3之间的弱氧化晶体是合适的。 相似文献
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